材料科学
碲化铋
退火(玻璃)
热电效应
薄膜
塞贝克系数
热电材料
六角相
制作
光电子学
复合材料
纳米技术
六方晶系
热导率
结晶学
物理
病理
化学
热力学
替代医学
医学
作者
Yuichi Hosokawa,Kodai Wada,Masaki Tanaka,Koji Tomita,Masayuki Takashiri
标识
DOI:10.7567/jjap.57.02cc02
摘要
High-purity hexagonal bismuth telluride (Bi2Te3) nanoplates were prepared by a solvothermal synthesis method, followed by the fabrication of nanoplate thin films by the drop-casting technique. The Bi2Te3 nanoplates exhibited a single-crystalline phase with a rhombohedral crystal structure. The nanoplates had a flat surface with edge sizes ranging from 500 to 2000 nm (average size of 1000 nm) and a thickness of less than 50 nm. The resulting Bi2Te3 nanoplate thin films were composed of well-aligned hexagonal nanoplates along the surface direction with an approximate film thickness of 40 µm. To tightly connect the nanoplates together within the thin films, thermal annealing was performed at different temperatures. We found that the thermoelectric properties, especially the Seebeck coefficient, were very sensitive to the annealing temperature. Finally, the optimum annealing temperature was determined to be 250 °C and the Seebeck coefficient and power factor were −300 µV/K and 3.5 µW/(cm·K2), respectively.
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